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阿司匹林类似物对N-甲基-D-天冬氨酸和锌离子神经毒性的神经保护作用的结构要求

Structural requirements for the neuroprotective effects of aspirin analogues against N-methyl-D-aspartate and zinc ion neurotoxicity.

作者信息

Moon Ho-Sang, Nam Sung-Il, Kim Su-Dong, Kim DongYeon, Gwag Byoung Joo, Lee Young Ae, Yoon Sung-Hwa

机构信息

Department of Molecular Science and Technology, Ajou University, Suwon, South Korea.

出版信息

J Pharm Pharmacol. 2002 Jul;54(7):935-44. doi: 10.1211/002235702760089054.

Abstract

In order to elucidate the structural requirements for the dual neuroprotective activity of aspirin against N-methyl-D-aspartate (NMDA) and zinc ion neurotoxicity, various aspirin analogues and derivatives, modified at the carboxylic group, the acetyl group, and the chain length between the carboxylic acid moiety and phenyl ring, were synthesized. Replacement of the carboxylic acid group with alkyl groups (compounds 2c and 2d) resulted in a dramatic increase in neuroprotective activity against NMDA neurotoxicity, while reduction of the carboxylic acid group to the alcohol (compound 2g) completely abolished this activity. In contrast to NMDA neurotoxicity, compounds that are devoid of the carboxylic acid group did not show any activity against zinc ion neurotoxicity. Replacement of the acetyl group with a propionyl (compound 5a) or butyryl group (compound 5b) did not significantly change the activity against NMDA neurotoxicity, but replacement of the acetyl group with a propionyl group (compound 5a) resulted in a slight decrease in activity against zinc ion neurotoxicity. Compound 12, which has ethylene units between the carboxylic acid moiety and phenyl ring in the structure of aspirin, exhibited greater neuroprotective activity against NMDA neurotoxicity than the compared compounds (aspirin, compound 9 and compound 17), which have different chain lengths. A similar trend was also observed in the neuroprotective activity against zinc ion neurotoxicity. These results indicate that the carboxylic acid group in aspirin is not indispensable for the inhibitory effect against NMDA neurotoxicity, but is essential for the inhibitory effect against zinc ion neurotoxicity. The acetyl group and ethylene unit's distance are favourable for the inhibitory effect against NMDA neurotoxicity as well as zinc ion neurotoxicity.

摘要

为了阐明阿司匹林对N-甲基-D-天冬氨酸(NMDA)和锌离子神经毒性的双重神经保护活性的结构要求,合成了各种在羧基、乙酰基以及羧酸部分和苯环之间链长上进行修饰的阿司匹林类似物和衍生物。用烷基取代羧酸基团(化合物2c和2d)导致对NMDA神经毒性的神经保护活性显著增加,而将羧酸基团还原为醇(化合物2g)则完全消除了这种活性。与NMDA神经毒性相反,不含羧酸基团的化合物对锌离子神经毒性没有任何活性。用丙酰基(化合物5a)或丁酰基(化合物5b)取代乙酰基对NMDA神经毒性的活性没有显著改变,但用丙酰基取代乙酰基(化合物5a)导致对锌离子神经毒性的活性略有下降。在阿司匹林结构中羧酸部分和苯环之间具有乙烯单元的化合物12,对NMDA神经毒性表现出比具有不同链长的对照化合物(阿司匹林、化合物9和化合物17)更强的神经保护活性。在对锌离子神经毒性的神经保护活性方面也观察到了类似的趋势。这些结果表明,阿司匹林中的羧酸基团对于抑制NMDA神经毒性不是必不可少的,但对于抑制锌离子神经毒性是必不可少的。乙酰基和乙烯单元的距离有利于对NMDA神经毒性以及锌离子神经毒性的抑制作用。

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